A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä
Fission of 180,182,183Hg* and 178Pt* nuclei at intermediate excitation energies (2022)


Kozulin, E. M., Knyazheva, G. N., Itkis, I. M., Itkis, M. G., Mukhamejanov, Y. S., Bogachev, A.A., Novikov, K. V., Kirakosyan, V.V., Kumar, D., Banerjee, T., Cheralu, M., Maiti, M., Prajapat, R., Kumar, R., Sarkar, G., Trzaska, W. H., Andreyev, A. N., Harca, I. M., Mitu, A., & Vardaci, E. (2022). Fission of 180,182,183Hg* and 178Pt* nuclei at intermediate excitation energies. Physical Review C, 105(1), Article 014607. https://doi.org/10.1103/PhysRevC.105.014607


JYU-tekijät tai -toimittajat


Julkaisun tiedot

Julkaisun kaikki tekijät tai toimittajatKozulin, E. M.; Knyazheva, G. N.; Itkis, I. M.; Itkis, M. G.; Mukhamejanov, Y. S.; Bogachev, A. A.; Novikov, K. V.; Kirakosyan, V. V.; Kumar, D.; Banerjee, T.; et al.

Lehti tai sarjaPhysical Review C

ISSN2469-9985

eISSN2469-9993

Julkaisuvuosi2022

Ilmestymispäivä06.01.2022

Volyymi105

Lehden numero1

Artikkelinumero014607

KustantajaAmerican Physical Society (APS)

JulkaisumaaYhdysvallat (USA)

Julkaisun kielienglanti

DOIhttps://doi.org/10.1103/PhysRevC.105.014607

Julkaisun avoin saatavuusEi avoin

Julkaisukanavan avoin saatavuus

Julkaisu on rinnakkaistallennettu (JYX)https://jyx.jyu.fi/handle/123456789/79984


Tiivistelmä

Background: The nature of asymmetric fission of preactinides is not yet understood in detail, despite intense experimental and theoretical studies carried out at present.

Purpose: The study of asymmetric and symmetric fission of 180,182,183Hg and 178Pt nuclei as a function of their excitation energy and isospin.

Methods: Mass-energy distributions of fission fragments of 180Hg, 178Pt (two protons less than 180Hg), and 182Hg (two neutrons more than 180Hg) formed in the 36Ar+144Sm,142Nd, and 40Ca+142Nd reactions were measured at energies near and above the Coulomb barrier. Fission of 183Hg obtained in the reaction of 40Ca with 143Nd was also investigated to see if one extra neutron could lead to dramatic changes in the fission process due to the shape-staggering effect in radii, known in 183Hg.

The measurements were performed with the double-arm time-of-flight spectrometer CORSET.

Results: The observed peculiarities in the fission fragment mass-energy distributions for all studied nuclei may be explained by the presence of a symmetric fission mode and three asymmetric fission modes, manifested by the different total kinetic energies and fragment mass splits. The yield of symmetric mode grows with increasing excitation energy of compound nucleus.

Conclusions: The investigated properties of asymmetric fission of 180,182,183Hg and 178Pt nuclei point out the existence of well-deformed proton shell at Z≈36 and a less deformed proton shell at Z ≈ 46.


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OKM-raportointiKyllä

VIRTA-lähetysvuosi2022

JUFO-taso2


Viimeisin päivitys 2024-15-06 klo 01:07